Sim2l for the Stars 2023 prototypes
29 Aug 2024 | Contributor(s): Daniel Mejia
Simtool for the stars 2023 devices
Simple Quantum Dot Lab (Web Interactive Front End)
08 Jan 2024 | Contributor(s): Daniel Mejia, Gerhard Klimeck
Compute the eigenstates of a particle in a box of various shapes including domes and pyramids
scale demo 1
04 Aug 2023 | Contributor(s): Daniel Mejia
pcpbtapp
05 Apr 2023 | Contributor(s): Daniel Mejia
Piece-Wise Constant Potential Barriers Sim2L
Jupyter Examples - Jupyter Notebook (202105)
27 Jan 2023 | Contributor(s): Daniel Mejia
Users Manual and Examples for Jupyter
Piece-Wise Constant Potential Barrier Sim2L
Tools | 01 Feb 2023 | Contributor(s): Daniel Mejia
Piece-Wise Constant Potential Barrier simulation using sim2l infrastructure
Crystal Viewer App (Web Interactive Front End)
Tools | 17 Mar 2023 | Contributor(s): Daniel Mejia, Gerhard Klimeck
Simtool Crystal viewer
PN Junction App (Web Interactive Front End)
Tools | 27 Oct 2023 | Contributor(s): Daniel Mejia, Gerhard Klimeck
PN Junction Visualization App
Single Gate Moscap
Tools | 24 May 2022 | Contributor(s): Daniel Mejia, Darin Tsai, Alan Ian Zhang, Aloysius Brave Rebeiro
Simtool to simulate single Gate Moscap
pntoy using simtool infrastructure
Tools | 02 Feb 2021 | Contributor(s): Daniel Mejia
PNJunction Simtool
MOSFET Simulation (Interactive notebook)
Tools | 09 Dec 2020 | Contributor(s): Daniel Mejia
Jupyter notebook that explore drain current as a function of source-drain voltage for different values of gate voltage, gate dimensions, substrate material, and oxide material in an n-type MOSFET. inspired on the original mosfetsat tool
PNJunction Lab Exploration Tool
Tools | 06 Oct 2020 | Contributor(s): Daniel Mejia, Alejandro Strachan, Saaketh Desai
DFT Results Explorer
Tools | 17 Feb 2021 | Contributor(s): Saaketh Desai, Juan Carlos Verduzco Gastelum, Daniel Mejia, Alejandro Strachan
Use visualization tools to explore correlations in a DFT simulation results database
Introduction to nanohub remote
Tools | 03 Oct 2020 | Contributor(s): Daniel Mejia, Alejandro Strachan, Saaketh Desai
Periodic Potential Lab - Kronig Penney Model - New Interactive Version
Tools | 23 Aug 2019 | Contributor(s): Daniel Mejia, Gerhard Klimeck
Periodic Potential Lab - Kronig Penney Model - Interactively explore bandstructure and wavefunctions with different potentials
PN Junction Lab (New Interactive Front End)
Tools | 16 Aug 2019 | Contributor(s): Daniel Mejia, Gerhard Klimeck
Visualize and explore P-N junction concepts fully interactively: Band Edge Diagrams, Charge Densities, I-V and C-V Characteristics
Crystal Viewer Lab (New Interactive Front End)
Tools | 16 Aug 2019 | Contributor(s): Daniel F Mejia, Gerhard Klimeck, Yuanchen Chu
Visualize and interact with various Crystalline Materials and all Bravais Lattices
DataExplorer Lab
Tools | 23 May 2019 | Contributor(s): Daniel F Mejia
DataExplorerLab is a python Tool that allows exploration of datasets using visualizations, this is based on Floatview library
Specific Resistance for Copper Interconnects
Tools | 20 Nov 2017 | Contributor(s): Daniel A. Valencia-Hoyos, Gustavo A Valencia, Daniel F Mejia, Kuang-Chung Wang, Zhengping Jiang, Gerhard Klimeck, Michael Povolotskyi
This tool calculates the specific resistance $rho(alpha,beta,gamma)$ based on the atomistic model reported in preprint arXiv:1701.04897
Quantum Dot Lab via Jupyter
Tools | 30 Aug 2017 | Contributor(s): Khaled Aboumerhi, Tarek Ahmed Ameen, Prasad Sarangapani, Daniel F Mejia, Gerhard Klimeck
Simulate 3-D confined states in quantum dot geometries using Jupyter notebook for educational purposes
ABACUS - Assembly of Basic Applications for Coordinated Understanding of Semiconductors
Tools | 16 Jul 2008 | Contributor(s): Xufeng Wang, Daniel Mejia, Dragica Vasileska, Gerhard Klimeck
One-stop-shop for teaching semiconductor devices
Crystal Viewer Tool
Tools | 22 Dec 2007 | Contributor(s): Yuanchen Chu, Daniel F Mejia, Fan Chen, James Fonseca, Michael Povolotskyi, Gerhard Klimeck
Visualize different crystal lattices and planes
Quantum Dot Lab
Tools | 12 Nov 2005 | Contributor(s): Prasad Sarangapani, James Fonseca, Daniel F Mejia, James Charles, Woody Gilbertson, Tarek Ahmed Ameen, Hesameddin Ilatikhameneh, Andrew Roché, Lars Bjaalie, Sebastian Steiger, David Ebert, Matteo Mannino, Hong-Hyun Park, Tillmann Christoph Kubis, Michael Povolotskyi, Michael McLennan, Gerhard Klimeck
Compute the eigenstates of a particle in a box of various shapes including domes, pyramids and multilayer structures.